Inbred corn line WBB53

Multicellular living organisms and unmodified parts thereof and – Plant – seedling – plant seed – or plant part – per se – Higher plant – seedling – plant seed – or plant part

Reexamination Certificate

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Details

C800S265000, C800S298000, C800S284000, C800S279000, C800S295000, C800S302000, C800S303000, C800S301000, C435S412000, C435S424000, C435S430000, C435S430100, C435S468000

Reexamination Certificate

active

11065923

ABSTRACT:
An inbred corn line, designated WBB53, is disclosed. The invention relates to the seeds of inbred corn line WBB53, to the plants and plant parts of inbred corn line WBB53 and to methods for producing a corn plant, either inbred or hybrid, by crossing the inbred line WBB53 with itself or another corn line. The invention further relates to methods for producing a corn plant containing in its genetic material one or more transgenes and to the transgenic plants produced by that method and to methods for producing other inbred corn lines derived from the inbred WBB53.

REFERENCES:
patent: 5304719 (1994-04-01), Segebart
patent: 5367109 (1994-11-01), Segebart
patent: 5523520 (1996-06-01), Hunsperger et al.
patent: 6025547 (2000-02-01), Stucker
patent: 6096953 (2000-08-01), Hoffbeck
patent: 6686520 (2004-02-01), Treat et al.
Eshed et al. Genetics, vol. 143, pp. 1807-1817, 1996.
Kraft et al. Theor. Appl. Genet. 2000, vol. 101, pp. 323-326.
Allard, 1960. Principles of Plant Breeding. John Wiley & Sons, Inc. p. 55.
Darnell, et al., 1990. DNA Replication, Repair and Recombination. In Molecular Cell Biology, 2ndEdition, W. H. Freeman and Company, p. 478.
Eshed, et al., 1996. Less-than-additive epistatic interactions of quantitative trait loci in tomato. Genetics. 143:1807-1817.
Kraft, et al., 2000. Linkage disequilibrum and fingerprinting in sugar beet. Theor. Appl. Genet. 101:323-326.
Murray, et al., 1988. Restriction fragment length polymorphisms: What are they and how can breeders use them? Proceedings of the 43rdAnnual Corn and Sorghum Industry Research Conference. 43:72-87.
Napoli, et al., 1990. Introduction of a chimeric chalcone synthase gene into petunia results in reversible co-suppression of homologous genes in trans. The Plant Cell. 2:279-289.
Phillips, et al., In Corn and Corn Improvement, ASA Monograph No. 18, 3rdedition, p. 358.

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